WO2008035782A1 - Dispositif de commande et procédé de commande d'imprimante - Google Patents

Dispositif de commande et procédé de commande d'imprimante Download PDF

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Publication number
WO2008035782A1
WO2008035782A1 PCT/JP2007/068437 JP2007068437W WO2008035782A1 WO 2008035782 A1 WO2008035782 A1 WO 2008035782A1 JP 2007068437 W JP2007068437 W JP 2007068437W WO 2008035782 A1 WO2008035782 A1 WO 2008035782A1
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WO
WIPO (PCT)
Prior art keywords
plate
printing
water treatment
water
processless
Prior art date
Application number
PCT/JP2007/068437
Other languages
English (en)
Japanese (ja)
Inventor
Shinichiro Senoo
Original Assignee
Mitsubishi Heavy Industries, Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Heavy Industries, Ltd. filed Critical Mitsubishi Heavy Industries, Ltd.
Priority to JP2008535412A priority Critical patent/JPWO2008035782A1/ja
Priority to US12/375,270 priority patent/US20090199730A1/en
Priority to DE112007001941T priority patent/DE112007001941T5/de
Publication of WO2008035782A1 publication Critical patent/WO2008035782A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41CPROCESSES FOR THE MANUFACTURE OR REPRODUCTION OF PRINTING SURFACES
    • B41C1/00Forme preparation
    • B41C1/055Thermographic processes for producing printing formes, e.g. with a thermal print head
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41CPROCESSES FOR THE MANUFACTURE OR REPRODUCTION OF PRINTING SURFACES
    • B41C1/00Forme preparation
    • B41C1/10Forme preparation for lithographic printing; Master sheets for transferring a lithographic image to the forme
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F33/00Indicating, counting, warning, control or safety devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2213/00Arrangements for actuating or driving printing presses; Auxiliary devices or processes
    • B41P2213/70Driving devices associated with particular installations or situations
    • B41P2213/73Driving devices for multicolour presses
    • B41P2213/734Driving devices for multicolour presses each printing unit being driven by its own electric motor, i.e. electric shaft
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2233/00Arrangements for the operation of printing presses
    • B41P2233/10Starting-up the machine
    • B41P2233/12Pre-wetting

Definitions

  • the present invention relates to an operating device and an operation method of a printing press capable of printing using a processless plate.
  • CT P Computer to which outputs printing plates (PS plates) for printing directly from data on sheet-fed offset printing presses, commercial offset rotary presses, newspaper offset rotary presses and lithographic printing presses Plate) is being used.
  • the CTP plate (printing plate) used in this CTP has been subjected to laser drawing, development, and gum treatment.
  • processless CTP plate a plate that is called a processless (non-processed) plate (processless CTP plate) has emerged in CTP, and a plate that does not require development processing is used. Because processless plates do not develop, they have various advantages such as space saving of developing equipment and environmental friendliness in the printing plate process such as storage and management of waste chemicals.
  • This processless plate is produced by first exposing a lithographic printing plate material, and then mounting the exposed lithographic printing plate material on a plate cylinder of a printing machine, either alone or in printing ink. By supplying the fountain solution to the plate surface, the unnecessary portions for printing on the exposed surface are removed and development is performed.
  • Patent Document 1 describes a technique for performing development by supplying dampening water for printing to a printing plate (water treatment).
  • Patent Document 2 proposes a technique for performing dampening water supply and ink supply at the optimal timing during water treatment as a technique for shortening the development time on the plate cylinder of the processless plate. Yes.
  • Patent Document 1 Japanese Patent No. 2938397
  • Patent Document 2 Japanese Patent Laid-Open No. 2000-52634
  • the ink may adhere to the printing plate, making it impossible to use the printing plate.
  • the present invention has been devised in view of such problems, and can easily and appropriately carry out water treatment on the processless plate, thereby reducing the burden on the operator and improving the printing press itself. It is an object of the present invention to provide an operating device and an operating method for a printing press capable of suppressing an increase in preparation time and an accompanying increase in waste paper. Means for solving the problem
  • the operating device of the printing press is capable of printing using a processless plate that performs development by water treatment that supplies dampening water to the plate surface on the plate cylinder.
  • a printing plate determination means for determining whether or not the printing plate mounted on the plate cylinder of the printing unit section is a processless plate by replacing the plate, and the printing plate determination means If it is determined that the printing plate is a processless plate, the plate cylinder is brought into non-contact with the printing paper and rotated at a preset speed, and the water treatment is performed for a preset time. It is characterized by having control means!
  • the water treatment in this case can be achieved by providing a watering roller for supplying dampening water to the printing plate.
  • a water spray for supplying dampening water the water spray may be activated by operating the water spray.
  • dampening temperature adjusting means for adjusting the temperature of the dampening water supplied to the printing plate, so that the dampening water temperature at the water treatment becomes a preset appropriate temperature. It is preferable to control the dampening temperature adjusting means!
  • a function dedicated to the processless plate is provided in advance for at least one of an API function, an ink speed tracking function, an ink speed tracking function, and a water source speed tracking function related to the control of the printing unit,
  • the control means controls the printing unit using a function dedicated to the processless plate when the printing plate determination means determines that the printing plate is a processless plate.
  • control means controls each part of the printing unit so as to start other processes that are ready for printing (pause or continuously). It is preferable to do.
  • control means when the water treatment is performed, the control means preferably performs control so as to perform other processing related to print preparation in parallel with this! /.
  • the process for preparing for printing, and other processing includes any of the following: heating of the dryer, preliminary ink supply, cleaning of the impression cylinder or blanket!
  • An operation method of a printing press is an operation method of a printing press capable of printing using a processless plate that forms an image by water treatment for supplying dampening water to a plate surface on a plate cylinder.
  • the plate determining step for determining whether or not the plate mounted on the plate cylinder of the printing unit section is a processless plate by exchanging the plate, and the plate is determined to be a processless plate by the plate determining step. If determined to be present, the printing cylinder is brought into a non-contact state with the printing paper and rotated at a preset speed, and a control step for controlling the water treatment for a preset time is provided. It is characterized by that! /
  • the temperature of the dampening water supplied to the printing plate at the time of the water treatment is adjusted to an appropriate preset temperature.
  • a function dedicated to the processless plate is provided in advance for at least one of an API function, an ink speed tracking function, an ink speed tracking function, and a water source speed tracking function related to the control of the printing unit.
  • the control step When the printing plate determination step determines that the printing plate is a processless plate, it is preferable to control the printing unit using a function dedicated to the processless plate.
  • control step it is preferable to perform control so as to start another process for preparing for printing after the water treatment is performed! /.
  • control step when performing the water treatment, it is preferable to perform control so as to carry out other treatments in parallel with the preparation for printing.
  • the plate cylinder is set in a non-contact state with the printing paper in advance.
  • the water treatment is performed for a preset time and the operator's burden on the water treatment is greatly reduced, and the water treatment itself is appropriately (over and short) Not). For this reason, it is possible to minimize the time required for water treatment added to the preparation time of the printing press, and to suppress the increase in the preparation time due to the water treatment and the resulting increase in waste paper. Can do.
  • water treatment can be performed quickly. For example, when the temperature of water during water treatment is higher than room temperature, the water treatment can be completed more quickly with higher development processing efficiency.
  • the printing unit must be controlled using functions (API function, ink speed tracking function, ink speed tracking function, water source speed tracking function) dedicated to the processless plate.
  • API function ink speed tracking function, ink speed tracking function, water source speed tracking function
  • S it is possible to properly print with processless plates.
  • the temperature of the high temperature where the temperature rise is The force that causes the continuous paper to pass through the dryer at low speed
  • the continuous paper may be dried excessively, which may cause a paper break.
  • the continuous paper can be accelerated to the printing speed as soon as the temperature rise of the dryer is completed, this possibility can be avoided.
  • FIG. 1 is a configuration diagram showing a printing machine and an operating apparatus of the printing machine according to an embodiment of the present invention.
  • FIG. 2 is a flowchart for explaining processing according to the type of printing plate at the time of plate replacement according to the embodiment of the present invention, the operating device and operating method of the printing press.
  • FIG. 3 is a flowchart for explaining water treatment according to an embodiment of the present invention, an operation device and an operation method of a printing press.
  • FIG. 4 (a) and FIG. 4 (b) are flow charts for explaining an example of processing at the time of plate replacement according to an embodiment of the present invention, an operating device of a printing press and an operating method.
  • 4 (a) shows the first example
  • FIG. 4 (b) shows the second example.
  • FIGS. 5 (a) and 5 (b) are! /, And an example of printing preparation processing at the time of plate replacement by the operating device and operating method of the printing press according to one embodiment of the present invention will be described.
  • FIG. 5 (a) shows a first example
  • FIG. 5 (b) shows a second example.
  • FIGS. 6 (a) to 6 (c) are graphs for explaining the effect of speed control according to the operation device and operation method of a printing press, in which the deviation is also a force in one embodiment of the present invention.
  • FIG. 6 (a) shows this embodiment
  • FIGS. 6 (b) and 6 (c) show comparative examples.
  • FIG. 7 is a time chart for explaining an example of a print preparation process according to an embodiment of the present invention.
  • Control unit (general control unit) as control means
  • FIG. 1 to FIG. 5 (a) and FIG. 5 (b) illustrate a printing press, a printing press operating device, and a driving method according to an embodiment of the present invention.
  • the printing machine that is effective in the present embodiment is a commercial offset rotary printing machine.
  • This commercial rotary offset printing machine is a printing paper as printing paper from the upstream side of the machine.
  • a dryer section for simply drying the web 10 printed by the printing section 3 (only, 4), a cooling unit 5 for cooling the web 10 dried by the dryer 4, a web path unit 6 for passing the web 10 from the cooling unit 5 while adjusting the phase, and a web path unit 6 Folding machine 7 for cutting and folding web 10 It is equipped with a.
  • the infeed section 2, each printing unit section 3;! To 34, the cooling section 5, the web path section 6, and the folding machine 7 are respectively provided with drive motors (shaftless motors) 2a, 31a to 34a, 5a, 6a, 7a are provided so that each rotating part can be controlled independently.
  • the paper feeder 1 is also provided with a brake 12 for braking the web 10 fed from the reel stand 11. It is.
  • Each drive motor 2a, 31a to 34a, 5a, 6a, 7a is controlled at each rotation speed and each phase by the motor control unit 8, and the motor control unit 8 and the brake 12 are controlled by a control unit (general control unit). ) It is supposed to be controlled by 9.
  • the control unit 9 is configured to control not only the motor control unit 8 (drive motors 2a, 31a to 34a, 5a, 6a, 7a) and the brake 12, but also various control elements of the printing machine. ing.
  • each printing unit section 3;!-34 has plate cylinders 31b-34b and blanket cylinders 31c-34c for printing on each surface (upper surface, lower surface) on both surfaces of the web 10, respectively.
  • the reference numerals of the lower plate cylinders 31b to 34b and the blanket cylinders 31c to 34c are omitted.
  • Each plate cylinder 31b to 34b is manufactured as a CTP plate (printing plate) using a normal plate (CTP plate, traditional method (film to plate printing) that has undergone laser drawing, development, and gumming. Plate) and processless (no processing) plate (processless CTP plate) can be selected and mounted.
  • the plate type information is input to the control unit 9, and when the plate is replaced with a normal plate force or a processless plate, the plate type information is recognized. I am able to do it.
  • the plate type information is, for example, upper image information (image information using digital data that is a source to be printed on the CTP plate, specifically, image data (finally lbit) to be printed on the CTP.
  • Processed plate and waffle symbol (printing plate type symbol) is attached to the file name of the processed file name (multiple gradations such as CIP3 / 4 data).
  • the plate type information is obtained, and it can be recognized from the plate type information that the plate has been changed from a normal plate to a processless plate.
  • an input means for selecting whether or not the installed printing plate is a processless plate is provided in the printing machine. Attached, the operator operates this input means and inputs the plate type information to the control unit 9.
  • an ink preset system (Auto Preset InkingS) that shows the ink supply (ink key opening in the case of the ink key method) as a function of the drawing rate (pattern area).
  • ystem API function
  • a function that sets the peripheral speed ratio between the transfer roller and the ink source roller according to the speed of the printing press (ink speed tracking function)
  • a water source speed tracking function (water speed depending on the speed of the printing press) Functions for setting the original rotation amount and adjusting the amount of water supplied to the printing plate and ink roller group), these functions are set separately for normal plates and processless plates.
  • the function can be obtained by measuring the pattern information written on the printing plate with an optical pattern area ratio meter, but the optical pattern area can be obtained even with the same pattern depending on the color of the printing plate. The measured value varies depending on the rate meter. Comparing the normal plate and the processless plate, the plate surface composition material is different because the plate surface composition material is different, so the color of the plate surface is generally different, and even if the same pattern is read with an optical reader, it is different from the normal plate. The line drawing rate is different from the processless plate. Therefore, different API functions must be set for normal plates and processless plates.
  • each function must be different between a normal plate and a processless plate due to the difference in the pattern forming part plate surface composition material. I must.
  • the API function varies depending on the characteristics of the plate (press plate), and the printing characteristics differ in the same way, so an ink speed tracking function and a water source speed tracking function must be set.
  • the functions set separately for the normal plate and the processless plate are input to a data storage unit (not shown) in advance together with other data that is useful for the operation of other printing presses.
  • the control unit 9 appropriately calls and uses these operation data (including each function data) from the data storage unit.
  • the control unit 9 recognizes from the input plate type information that the plate has been replaced from a normal plate to a processless plate, and operates according to the processless plate. Data (including each function data) is imported and used for the operation of the printing press.
  • the control unit 9 When the control unit 9 recognizes that the plate has been changed from a normal plate to a processless plate, the water treatment condition set in advance as operation data [supply amount of dampening water (supply amount per unit time)]
  • the printing cylinders (plate cylinders 31b to 34b and blanket month 31c to 34c) were separated from the web 10 so that the water treatment was performed based on the speed of the plate cylinder and the web and the water treatment execution time, etc.
  • the printing motors (plate cylinders 31b to 34 b and blanket cylinders 31c to 34c are controlled by controlling the drive motors 31a to 34a.
  • the dampening roller (or dampening roller, not shown) of the dampening solution device is brought into contact with the plate surface of the processless plate (wearing the dampening roller), Plate of processless plate Supply water to the surface for development.
  • the version changer may be a full version (fully automatic version changer) or a semi-self version (semiautomatic version changer).
  • plate type information here, referred to as plate exchange printing flag information
  • the plate replacement printing flag is set to ON when the plate is replaced with a processless plate, and set to OFF when the plate is replaced with a normal plate.
  • it is checked whether or not the plate replacement printing flag is on (ON) (step a20) . If the plate replacement printing flag is on, water treatment is performed for the corresponding printing unit (step a30), and water treatment is performed. After completion, the plate replacement printing flag is reset to OFF (step a40). On the other hand, if the plate replacement printing flag is off, the water treatment of the corresponding printing unit is not performed (step a50).
  • the supply amount of the dampening water which is effective in this water treatment, is increased from the normal dampening water supply amount at the time of printing, and the maximum supply amount per unit time by the dampening water device or By setting the supply rate close to this, water treatment is performed stably.
  • This increase in the dampening water supply amount can be realized by increasing the rotation speed of a water source roller (not shown) that supplies dampening water to the watering roller.
  • the control unit The mode is set to switch to the setting to automatically increase the dampening amount by 9.
  • the dampening amount may be switched manually.
  • the printing cylinders (plate cylinders 31b to 34b and blanket cylinders 31c to 34c) are operated to a certain degree of high speed (generally, the adjustment speed of the printing press to the printing speed (eg, 300 rpm to the maximum speed))
  • the web 10 is operated at a very low speed, which is significantly slower than the printing cylinder [for example, the slow speed (inching motion, the speed of threading) and the minimum speed (minimum speed of the printing machine exceeding the slow speed). Speed)] or set to stop.
  • the plate cylinders 31b to 34b are rotated at a high speed to some extent, the development processing can be stably performed with respect to the front surface of the printing plate.
  • the web 10 since the web 10 being water-treated becomes damaged paper, from the viewpoint of suppressing the occurrence of damaged paper, it is because the damaged paper decreases as the speed of the web 10 is reduced.
  • the transfer amount decreases as the rotational speed is increased thereafter. If such characteristics are known in advance, it is possible to determine the speed range where the water transferability is above a predetermined level, and the speed at which the water transfer to the surface is above a predetermined level can be set. .
  • the speed of the web 10 is set to 0 (stopped state), the amount of waste paper can be suppressed to a minimum. If the speed of the web 10 is excessively reduced or stopped, the web 10 Since water from water treatment concentrates and scatters at a certain location, the water penetrates into the paper fibers of the web 10 and the strength of the web 10 is greatly reduced. The risk of inviting increases. Therefore, it is preferable to run the web 10 at a low speed so as not to cause the web 10 to break.
  • the difficulty of the web 10 when the water adheres to the web 10 (that is, the water resistance strength) varies.
  • coated paper is difficult to cut even when water adheres (that is, its water resistance is high), so it can be low speed (for example, slow speed). It is necessary to reduce the amount of water attached at a higher speed than the coated paper because it is easy to cut when worn (that is, the water resistance strength is low).
  • the water resistance strength [the amount of water attached (total amount attached or amount attached per unit time) is difficult to cut! /, Degree! /,] Also varies depending on the basis weight of the paper.
  • the speed of the web 10 depends on the type of the web 10 so as to be as low as possible (the lowest speed at which the web 10 can be operated) in a range that does not cause the web 10 to break according to the water resistance strength. It is preferable to set it to be variable.
  • the plate cylinders 31b to 34b are rotated at the rotation speed set in this way.
  • a watering roller is put on and worn in advance.
  • the set total amount of water is supplied to the plate surface of the processless plate, the water roller is removed and the plate cylinders 31b to 34b are decelerated to a predetermined low speed or decelerated until they stop.
  • the total amount of water is set in advance by an operator or the like according to the state of the printing plate (for example, the area to be developed) and input to the control unit 9.
  • the control unit 9 performs water treatment as shown in FIG.
  • parameters required for water treatment are set or recalled from the storage device (step b10).
  • Parameters required for water treatment include, for example, water treatment speed (speed of printing unit 3;! To 34), swimsuit time (time for which the watering roller is attached to the plate cylinder), water supply amount (water source Roller rotation amount).
  • the printing press (only the printing unit part, the part including the printing unit part, or all parts) is accelerated (step b20), and the water supply amount is set as the set value (step b30).
  • the water source roller is operated at the minimum speed for 30 seconds and then rotated at the maximum rotation amount (maximum rotation speed).
  • the water source roller speed during this water treatment is a special value that is faster than in normal operation. Will be set. Then, set the swimsuit roller to “wear” (step b40), leave the swimsuit roller in “touch” until the set time has passed (step b50), supply water, and when the set time has passed, Finish the water treatment by removing the dosing roller (step b 60).
  • the temperature of the dampening water supplied at the time of this water treatment is adjusted to a preset appropriate temperature.
  • the water flow structure of the water source roller is used. Then adjust the temperature of the dampening water!
  • a water passage structure is provided inside the water source roller, and the water source roller is heated or cooled depending on the temperature of the water passed through the water passage structure.
  • each part of the dampening device is overheated due to the high-speed operation of each part of the machine, so water is passed to cool the water source roller, but water treatment is performed at the start of the machine.
  • each part of the dampening system is cold, and the dampening water itself is also cold!
  • the water flow structure of the water source roller functions as a dampening temperature adjusting means for adjusting the dampening water temperature to a preset appropriate temperature.
  • the temperature of the supplied water is higher than the proper temperature, it can be lowered to the proper temperature by passing water.
  • the means for adjusting the dampening temperature is not limited to this, but in the case of this embodiment, since the existing water flow structure is used, the cost is not increased, and immediately before the supply. Since the dampening water temperature is adjusted, the dampening temperature can be adjusted more efficiently and responsively than, for example, the dampening water temperature in the water tank.
  • step clO As shown in Fig. 4 (a), after starting (step clO), after the plate change (step c20), the water treatment is continued without stopping the machine (step c30).
  • step clO As shown in Fig. 4 (b), after the plate replacement (step c20) is completed after startup (step clO), the machine is stopped (step c22) and then restarted (step c24). Then, water treatment (step c30) may be performed.
  • step c40 after the water treatment (step c30)
  • step c50 As shown in FIG. 4 (b), the printing operation (step c60) may be started continuously after the water treatment (step c30) without stopping the machine.
  • the ink winding process is started by operating the control button for ink winding (ink pre-supply), the machine speed is increased to the specified speed, and the key opening is temporarily set to 0 (no ink supplied).
  • the ink base roller is also rotated as appropriate. In this case, the ink key is preset thereafter.
  • Fig. 5 For example, focusing on dryer temperature rise, as shown in Fig. 5 (a), the temperature rise of the dryer (step c32) after completion of water treatment (step c30) after startup (step clO) and As shown in (b), there is a mode in which the temperature rise (step c32) of the driver is performed in parallel with the water treatment (step c30) after startup (step c10).
  • the force S to which any of the modes of FIGS. 5 (a) and 5 (b) can be applied and in this embodiment, as shown in FIG. 5 (b), in parallel with the water treatment.
  • a mode in which the temperature of the dryer is increased is used.
  • the start-up timing of the dryer temperature rise is set corresponding to the timing of the water treatment so that the completion of the dryer temperature rise and the completion of the water treatment are simultaneous.
  • the drying of the dryer is completed and the water treatment is completed at the same time, the web 10 can be accelerated to the printing speed as soon as the drying of the dryer is completed. From the viewpoint of preventing overdrying of the web 10, the drying of the dryer is completed. Even if the water treatment and the water treatment are not completed at the same time, it is sufficient that the water treatment is completed before the drying of the dryer is completed. However, it is assumed that the time required for water treatment is longer than the time required for the temperature rise of the dryer. From the viewpoint of shortening the preparation time, the completion of the temperature rise of the dryer and the completion of the water treatment are simultaneous. Preferably there is.
  • the control unit 9 considers the case where a substance that dissolves in the dampening water by the water treatment or dust generated in the water treatment process enters the dampening water.
  • an alarm is activated to guide the replacement of dampening water.
  • the water treatment integration information for example, it is possible to use the integrated value (number of webs) of the amount of web traveling during water treatment, and the number of webs traveled during water treatment is a preset value (several hundreds). If reached, activate the alarm as dampening water needs to be replaced. Further, in the case of a device having a mechanism for automatically changing the dampening / dampening water, the dampening water may be automatically changed.
  • the control unit 9 determines the printing plate based on the printing plate type information when the printing plate is replaced. Is a processless plate, and if the printing plate is a processless plate, the plate cylinders 31b to 34b are brought out of contact with the web 10 and the set speed is set. Rotate the plate cylinder 3 lb to 34b with the water supply state (water source roller rotation speed) as the set value and the watering roller on the plate cylinder for water treatment for a preset time.
  • water supply state water source roller rotation speed
  • the temperature of dampening water supplied to the printing plate during water treatment is adjusted to an appropriate temperature. Therefore, water treatment can be performed promptly.
  • the existing water flow structure is used for the water source roller to control the temperature of the dampening water, which does not increase the equipment cost and can be adjusted to the appropriate temperature efficiently. Can be completed.
  • the printing plate is a processless plate
  • printing with the processless plate is possible by controlling the printing unit using functions dedicated to the processless plate (API function, ink speed tracking function, water source speed tracking function). Can be done appropriately.
  • API function ink speed tracking function
  • water source speed tracking function water source speed tracking function
  • the printing cylinders (plate cylinders 31b to 34b and blanket cylinders 31c to 34c) are operated at a high speed to some extent.
  • the web 10 is operated at a low speed or stopped at a significantly lower speed than the printing cylinder. Therefore, from the viewpoint of water treatment, when the plate cylinders 31b to 34b are rotated at a certain high speed, the developing process can be stably performed on the front surface of the printing plate, and as a result, the entire printing plate can be developed quickly.
  • the web 10 being treated with water is spoiled paper, from the viewpoint of suppressing the occurrence of spoiled paper, there is an effect that the spoiled paper is reduced as the speed of the web 10 is reduced.
  • the development processing may take time force S.
  • the plate cylinders 31b to 34b during the water treatment Since the rotation speed is set, the development process can be performed efficiently in a short time.
  • the web 10 is run at a low speed without causing the web 10 to stop at zero speed (stopped state), there is a minimum amount of paper loss within a range that does not cause paper breakage. S
  • FIGS. 6 (a) to 6 (c) are time charts showing the printing unit speed (speed of the plate cylinders 31b to 34b) and the web speed.
  • FIG. 6 (a) shows the present embodiment.
  • Figures 6 (b) and 6 (c) show comparative examples.
  • the water supply amount and the amount of damaged paper are each indicated by an area.
  • the printing unit speed speed of the plate cylinders 31b to 34b
  • the web speed are equal
  • the printing unit speed is as shown in Fig. 6 (b). If the speed is set to a high speed that enables efficient water treatment, a large amount of paper is lost due to the high speed running of the web, as shown in Fig. 6 (c).
  • the printing unit speed (plate cylinders 31b to 34b) is a force that operates at a high speed to some extent. even if significantly to the low speed of the slow-speed operation, efficiency by Les, on which it is water treatment, running speed of the web, paper loss amount due to the reduction of travel time can be greatly reduced this and force s Wakakaru.
  • the start-up timing of the dryer temperature rise is set corresponding to the timing of the water treatment so that the completion of the dryer temperature rise and the completion of the water treatment are performed simultaneously. Since the web 10 can be accelerated to the printing speed as soon as the temperature is completed, it is possible to avoid the possibility of a paper break caused by overdrying of the continuous paper by the dryer after the completion of the temperature increase.
  • the water treatment is completed before the dryer temperature rise is completed, even though the completion of the dryer temperature rise and the completion of the water treatment are not simultaneous. It is assumed that the time required for water treatment is longer than the time required for the temperature rise of the dryer, and the water treatment is completed when the temperature rise of the driver is completed, so the preparation time is shortened. That's the power S.
  • each operation of water treatment is automatically performed under the control of the control unit 9, but some of these operations are appropriately performed by an operator's operation (for example, operation of each operation button). You may do it.
  • a commercial offset rotary printing press has been described.
  • the present invention is also suitable for other printing presses such as a sheet-fed offset press and a newspaper offset rotary press. Can be used.
  • the present invention can be widely applied to sheet-type offset printing presses, commercial offset rotary printing presses, newspaper offset rotary presses, and various other printing presses when using processless plates. .

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  • Optics & Photonics (AREA)
  • Thermal Sciences (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Abstract

L'invention concerne un dispositif de commande d'imprimante qui permet d'effectuer l'impression au moyen d'un cliché sans développement afin de réduire le temps de préparation de l'imprimante et les pertes de papier y afférentes par un traitement à l'eau aisé et adéquat du cliché sans développement, allégeant de la sorte la charge de travail de l'opérateur. L'invention se rapporte également à un procédé de commande d'imprimante. Le dispositif de commande de l'invention comprend des moyens de détermination de bloc d'impression qui déterminent si un bloc d'impression attaché aux cylindres porte-plaque (31b-34b) d'une section d'unité d'impression lors d'un changement de cliché est un cliché sans développement ou non; et des moyens de commande (9) qui font tourner les cylindres porte-plaque (31b-34b) à une vitesse préétablie dans un état de blocage dans lequel ils ne touchent pas la feuille d'impression lorsque les moyens de détermination de bloc d'impression déterminent que le bloc d'impression est un cliché sans développement lors d'un changement de cliché, et qui commandent la mise en oeuvre du traitement à l'eau pendant une durée préétablie.
PCT/JP2007/068437 2006-09-22 2007-09-21 Dispositif de commande et procédé de commande d'imprimante WO2008035782A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP2008535412A JPWO2008035782A1 (ja) 2006-09-22 2007-09-21 印刷機の運転装置及び運転方法
US12/375,270 US20090199730A1 (en) 2006-09-22 2007-09-21 Apparatus and method for driving a printing press
DE112007001941T DE112007001941T5 (de) 2006-09-22 2007-09-21 Vorrichtung und Verfahren zum Antreiben einer Druckpresse

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2006-257623 2006-09-22
JP2006257623 2006-09-22

Publications (1)

Publication Number Publication Date
WO2008035782A1 true WO2008035782A1 (fr) 2008-03-27

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PCT/JP2007/068437 WO2008035782A1 (fr) 2006-09-22 2007-09-21 Dispositif de commande et procédé de commande d'imprimante

Country Status (5)

Country Link
US (1) US20090199730A1 (fr)
JP (1) JPWO2008035782A1 (fr)
CN (1) CN101505966A (fr)
DE (1) DE112007001941T5 (fr)
WO (1) WO2008035782A1 (fr)

Families Citing this family (1)

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Publication number Priority date Publication date Assignee Title
JP6240481B2 (ja) * 2013-11-22 2017-11-29 株式会社小森コーポレーション インキ供給方法およびインキ供給装置

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01121711A (ja) * 1987-09-30 1989-05-15 Heidelberger Druckmas Ag センサ装置
JP2004314530A (ja) * 2003-04-18 2004-11-11 Konica Minolta Medical & Graphic Inc 平版印刷版材料の印刷機上現像方法及び印刷方法
JP3605403B2 (ja) * 2001-09-26 2004-12-22 三菱重工業株式会社 オフセット輪転印刷機のブランケット洗浄方法及びブランケット洗浄液除去方法
JP2007083543A (ja) * 2005-09-22 2007-04-05 Dainippon Printing Co Ltd 印刷機の運転方法

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE69517174T2 (de) 1995-10-24 2000-11-09 Agfa-Gevaert N.V., Mortsel Verfahren zur Herstellung einer lithographische Druckplatte mit auf der Druckpresse stattfindenden Entwicklung
US5738014A (en) * 1996-07-31 1998-04-14 Agfa Division, Bayer Corporation Method and apparatus for making lithographic printing plates in an automated computer to plate imaging system
US6289650B1 (en) * 1998-05-07 2001-09-18 Fuji Photo Film Co., Ltd. Automatic plate making machine equipped with photosensitive printing plate supplying apparatus and printing plate packaging means
JP2000052634A (ja) 1998-08-07 2000-02-22 Konica Corp 平版印刷版の刷版の製造方法、印刷物の製造方法及び印刷機の自動印刷機構
JP2003015312A (ja) * 2001-07-03 2003-01-17 Fuji Photo Film Co Ltd 印刷版選別搬送装置
US6915742B2 (en) * 2001-09-26 2005-07-12 Mitsubishi Heavy Industries, Ltd. Blanket washing method and blanket washing solution removing method for use in web offset printing press
ES2275934T3 (es) * 2001-11-22 2007-06-16 KOENIG & BAUER AKTIENGESELLSCHAFT Uso de una tinta de imprenta en un mecanismo de impresion y mecanismo de impresion de una rotativa.
JP3486410B1 (ja) * 2002-12-26 2004-01-13 有限会社アドバンスト・エンジニアリング オフセット印刷機の湿し水供給方法及び装置
JP4073345B2 (ja) * 2003-03-24 2008-04-09 富士フイルム株式会社 平版印刷方法および印刷装置
JP3897256B2 (ja) * 2003-03-25 2007-03-22 富士フイルム株式会社 印刷版枚葉供給装置
JP2005106884A (ja) * 2003-09-29 2005-04-21 Fuji Photo Film Co Ltd 平版印刷版の画像形成装置
JP4505242B2 (ja) * 2004-03-17 2010-07-21 富士フイルム株式会社 平版印刷方法
JP4698414B2 (ja) * 2005-12-27 2011-06-08 大日本スクリーン製造株式会社 現像処理方法および印刷機

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01121711A (ja) * 1987-09-30 1989-05-15 Heidelberger Druckmas Ag センサ装置
JP3605403B2 (ja) * 2001-09-26 2004-12-22 三菱重工業株式会社 オフセット輪転印刷機のブランケット洗浄方法及びブランケット洗浄液除去方法
JP2004314530A (ja) * 2003-04-18 2004-11-11 Konica Minolta Medical & Graphic Inc 平版印刷版材料の印刷機上現像方法及び印刷方法
JP2007083543A (ja) * 2005-09-22 2007-04-05 Dainippon Printing Co Ltd 印刷機の運転方法

Also Published As

Publication number Publication date
US20090199730A1 (en) 2009-08-13
DE112007001941T5 (de) 2009-07-30
JPWO2008035782A1 (ja) 2010-01-28
CN101505966A (zh) 2009-08-12

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